Biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid
Sulfonic-functionalized carbon material derived from the incomplete carbonization of mungbean vermicelli was reported here as a catalyst for esterification of acetic acid. The catalyst with the highest activity (S BET = 18.1 m 2 /g and acid site density of 1.53 mmol H + /g cat ) was obtained by...
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th-mahidol.141572018-06-11T11:48:22Z Biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid W. W. Mar E. Somsook Mahidol University Faculty of Science Engineering Sulfonic-functionalized carbon material derived from the incomplete carbonization of mungbean vermicelli was reported here as a catalyst for esterification of acetic acid. The catalyst with the highest activity (S BET = 18.1 m 2 /g and acid site density of 1.53 mmol H + /g cat ) was obtained by carbonization at 573 K and sulfonation at 373 K due to a feasible attachment of more - SO 3 H groups to flexible carbon sheets compared to the other synthesized solids. Approximate 64% yield of methyl acetate was achieved over (2:1) molar ratio of methanol to acetic acid with 3 wt% of catalyst. From the economic outlook, this environmentally benign C-SO 3 H catalyst could be a promising candidate for the esterification of high free fatty acid feedstocks reducing the production cost of biodiesel. © (2012) Trans Tech Publications. 2018-06-11T04:48:22Z 2018-06-11T04:48:22Z 2012-05-15 Conference Paper Advanced Materials Research. Vol.506, (2012), 70-73 10.4028/www.scientific.net/AMR.506.70 10226680 2-s2.0-84860816312 https://repository.li.mahidol.ac.th/handle/123456789/14157 Mahidol University SCOPUS https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=84860816312&origin=inward |
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Engineering W. W. Mar E. Somsook Biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid |
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Sulfonic-functionalized carbon material derived from the incomplete carbonization of mungbean vermicelli was reported here as a catalyst for esterification of acetic acid. The catalyst with the highest activity (S BET = 18.1 m 2 /g and acid site density of 1.53 mmol H + /g cat ) was obtained by carbonization at 573 K and sulfonation at 373 K due to a feasible attachment of more - SO 3 H groups to flexible carbon sheets compared to the other synthesized solids. Approximate 64% yield of methyl acetate was achieved over (2:1) molar ratio of methanol to acetic acid with 3 wt% of catalyst. From the economic outlook, this environmentally benign C-SO 3 H catalyst could be a promising candidate for the esterification of high free fatty acid feedstocks reducing the production cost of biodiesel. © (2012) Trans Tech Publications. |
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Mahidol University |
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Mahidol University W. W. Mar E. Somsook |
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Conference or Workshop Item |
author |
W. W. Mar E. Somsook |
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W. W. Mar |
title |
Biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid |
title_short |
Biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid |
title_full |
Biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid |
title_fullStr |
Biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid |
title_full_unstemmed |
Biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid |
title_sort |
biomass-based sulfonic-functionalized carbon solid acid for esterification of acetic acid |
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2018 |
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https://repository.li.mahidol.ac.th/handle/123456789/14157 |
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1763490994003640320 |